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首页> 外文期刊>Journal of Contaminant Hydrology >A simple model for evaluating isotopic (~(18)O, ~2H and ~(87)Sr/~(86)Sr) mixing calculations of mine - Impacted surface waters
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A simple model for evaluating isotopic (~(18)O, ~2H and ~(87)Sr/~(86)Sr) mixing calculations of mine - Impacted surface waters

机译:一种用于评估同位素的简单模型(〜(18)o,〜2h和〜(87)Sr /〜(86)SR)混合矿井撞击表面水的计算

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摘要

This study was aimed at identifying and quantifying mixing proportions in surface waters downstream of historical Cu-W-F skarn mine tailings at Yxsjoberg, Sweden, using O-18, H-2, and Sr-87/Sr-86 isotopes. In addition, a simple mathematical model was developed to evaluate the consistency of the mixing calculations. Hydrochemical and isotopic data from 2 groundwater wells, 6 surface water and 2 rainwater sampling sites, spanning 6 sampling campaigns between May and October were used. Three mixed surface waters downstream of the tailings were identified, namely: C7, C11 and C14. C7 was directly influenced by groundwater from the tailings whereas C11 was also subsequently influenced by C7. C14 on the other hand, had contributions from C11. Sequential mixing calculations indicated that the contribution of the groundwater to C7 ranges from 1 to 17%. The subsequent contribution of C7 to C11 varied from 49 to 91% whereas C14 had contributions of C11 ranging between 16 and 56%. A strong agreement between the model data (MD) and measured raw data (RD) for C11 and C14 indicated the accuracy of the mixing calculations. Variations between the MD and RD at C7, however, was mainly due to sorption and reductive processes underneath the tailings, which tend to attenuate the amount of dissolved ions reaching the surface waters, resulting in a low ionic contribution of the tailings groundwater to the surface water. The low ionic contribution of the groundwater to C7 suggested that although the tailings impoundment is of environmental concern, its impact on the downstream surface waters is small. The results of this study suggest that mixing calculations in surface waters involving a closed system such as groundwater (as an end-member) must be treated with caution. It is recommended that the interpretation of such mixing results must be coupled with detailed knowledge of the potential hydrogeochemical processes along its flow paths.
机译:本研究旨在使用O-18,H-2和SR-87 / SR-86同位素识别和量化历史Cu-W-F Skarn尾矿尾矿下游的表面水域中的混合比例。此外,开发了一种简单的数学模型来评估混合计算的一致性。使用来自2个地下水井,6月和10月之间的雨水抽样场所的水化学和同位素数据,6月和10月之间的采样运动。鉴定了尾矿下游的三个混合表面水,即:C7,C11和C14。 C7直接受到尾矿地下水的影响,而C11也随后受C7的影响。另一方面,C14与C11有贡献。序贯混合计算表明地下水的贡献为C7的贡献范围为1%至17%。随后C7至C11的贡献从49%变化到91%,而C14在16%至56%之间的C11贡献。用于C11和C14的模型数据(MD)和测量的原始数据(RD)之间的强烈一致性表明了混合计算的准确性。然而,C7的MD和Rd之间的变化主要是由于尾矿下方的吸附和还原过程,这倾向于衰减到达表面水域的溶解离子的量,导致尾矿地下水的低离子贡献到表面水。地下水对C7的低离子贡献表明,虽然尾矿蓄水是环境问题,但它对下游表面水的影响很小。该研究的结果表明,必须小心处理涉及封闭系统(作为端部)的封闭系统的表面水中的混合计算。建议使用这种混合结果的解释必须与沿其流动路径的潜在水力地球化学过程的详细知识相结合。

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